Arbuscular mycorrhizal symbioses in a cut-and-carry forage production system of legume tree [i]Gliricidia sepium[/i] and fodder grass [i]Dichanthium aristatum[/i] - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Agroforestry Systems Année : 2013

Arbuscular mycorrhizal symbioses in a cut-and-carry forage production system of legume tree [i]Gliricidia sepium[/i] and fodder grass [i]Dichanthium aristatum[/i]

Résumé

Arbuscular mycorrhizal (AM) symbioses may alter the competitive abilities of plant species and facilitate positive interactions such as nutrient transfer between plants. They are therefore particularly interesting components in agroforestry systems. We studied spatial variation of AM colonisation on a cut-and-carry fodder production site (agroforestry plot) of the legume tree [i]Gliricidia sepium[/i] and the fodder grass [i]Dichanthium aristatum[/i]. Roots of the two plant species were sampled under the tree canopies and on the adjacent grass plot at 1 and 3.5 m from the first tree row where [i]G. sepium[/i] roots also occur. Roots of [i]D. aristatum[/i] were also sampled on a nearby grass monocrop. Colonisation of arbuscules, vesicles and hyphae in root samples was visually determined, and AM fungal species were identified by DNA sequencing. Colonisation and frequency of types of AM formations varied statistically significantly between the species and sampling points. Arbuscular colonisation in [i]G. sepium[/i] roots was higher under the tree canopies than on the adjacent grass plot. Soil nutrient content, particularly P and N, and interspecies competition are the most probable explanations for the observed variation in AM colonisation. Both arbuscular colonisation and arbuscule: vesicle ratio in [i]D. aristatum[/i] roots was lower on the [i]D. aristatum[/i] monocrop than on the agroforestry plot under or near the tree canopies. Intercropping could stimulate AM symbiosis in [i]D. aristatum[/i]. Both plant species formed symbiosis with [i]Rhizophagus intraradices[/i], indicating potential for interplant N transfer via common mycelial networks of AM-forming fungi.
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hal-01133263 , version 1 (31-03-2015)

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Riina Jalonen, Sari Timonen, Jorge Sierra, Pekka Nygren. Arbuscular mycorrhizal symbioses in a cut-and-carry forage production system of legume tree [i]Gliricidia sepium[/i] and fodder grass [i]Dichanthium aristatum[/i]. Agroforestry Systems, 2013, 87 (2), pp.319-330. ⟨10.1007/s10457-012-9553-1⟩. ⟨hal-01133263⟩

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